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37Mn5钢热变形行为与流变应力模型研究
引用本文:王孟,洪慧平,王晓明.37Mn5钢热变形行为与流变应力模型研究[J].武汉冶金科技大学学报,2010(2):134-137.
作者姓名:王孟  洪慧平  王晓明
作者单位:北京科技大学材料科学与工程学院,北京100083
摘    要:利用Gleeble-1500热模拟实验机研究37Mn5钢在变形温度为800~1150℃、变形速率为0.1~10s^-1条件下的热压缩变形行为。采用应变硬化率-应力曲线图较精确地获得峰值应力,并用双曲正弦方程描述37Mn5钢热压缩变形过程中的峰值应力与Zener—Hollomon参数的关系。回归分析得到方程中变形激活能及各材料常数的值,获得37Mn5钢在高温条件下的流变应力本构方程。结果表明,采用该本构方程计算出的流变应力值与实验所得应力值非常接近。

关 键 词:37Mn5钢  热变形  流变应力  双曲线本构方程

Thermal deformation behavior and flow stress model of 37Mn5 steel
Authors:Wang Meng  Hong Huiping  Wang Xiaoming
Affiliation:(School of Materials Science and Engineering, University of Science and Technology 13eijing, Beijing 100083, China)
Abstract:The hot deformation behavior of 37Mn5 steel was investigated with a compression test on Gleeble-1500 simulator at a temperature range of 800~1 150℃ and strain rate range of 0.1-10 s-1.The accurate values of peak stress were obtained from the θ-acurve. A hyperbolic sine equation was employed to describe the relationship between the peak stress and Zener-Hollomon parameter, in which the activation energy of deformation and other constants were obtained using regression analysis. The flow stress constitutive equation of 37Mn5 steel during hot compression was obtained, and the results show that the flow stress of 37Mn5 steel predicted by the proposed models agrees well with the experimental results.
Keywords:37Mn5 steel  hot deformation  flow stress  hyperbolic sine constitutive equation
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